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Effect of Local Neck Anatomy on Localized One-Dimensional Measurements of Arterial Stiffness: A Finite-Element Model Study

机译:局部颈部解剖结构对动脉刚度的局部一维测量的影响:有限元模型研究

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摘要

Cardiovascular diseases (CVD) are the most prevalent cause of death in the Western World, and their prevalence is only expected to rise. Several screening modalities aim at detecting CVD at the early stages. A common target for early screening is common carotid artery (CCA) stiffness, as reflected in the pulse wave velocity (PWV). For assessing the CCA stiffness using ultrasound (US), one-dimensional (1D) measurements along the CCA axis are typically used, ignoring possible boundary conditions of neck anatomy and the US probe itself. In this study, the effect of stresses and deformations induced by the US probe, and the effect of anatomy surrounding CCA on a simulated 1D stiffness measurement (PWV ) is compared with the ground truth stiffness (PWV ) in 60 finite-element models (FEM) derived from anatomical computed tomography (CT) scans of ten healthy male volunteers. Based on prior knowledge from the literature, and from results in this study, we conclude that it is safe to approximate arterial stiffness using 1D measurements of compliance or pulse wave velocity, regardless of boundary conditions emerging from the anatomy or from the measurement procedure.
机译:心血管疾病(CVD)是西方世界最普遍的死亡原因,并且预计其发病率只会上升。几种筛选方法旨在早期检测CVD。早期筛查的常见目标是颈总动脉僵硬度(CCA),如脉搏波速度(PWV)所反映。为了使用超声(US)评估CCA刚度,通常使用沿CCA轴的一维(1D)测量,而忽略了颈部解剖结构和US探头本身的可能边界条件。在这项研究中,在60个有限元模型(FEM)中,将US探针引起的应力和变形的影响以及CCA周围的解剖结构对一维刚度测量(PWV)的影响与地面真实刚度(PWV)进行了比较。 )来自十名健康男性志愿者的解剖计算机断层扫描(CT)扫描。基于文献的先验知识以及本研究的结果,我们得出结论,不管解剖结构或测量程序出现的边界条件如何,使用一维顺应性或脉搏波速度测量值来估算动脉僵硬度都是安全的。

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